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1)  barrier property
阻隔性能
1.
Introducing the plasma polymerization with GMA(glycidyl methacrylate) used as a single layer,the GMA was polymerized on the surface of SiOx layers to modify the fragility so as to improve the barrier property and flexibility of SiOx thin films.
采用等离子体化学聚合,在氧化硅层表面聚合单层甲基丙烯酸缩水甘油酯(GMA)改善其脆性,提高氧化硅薄膜阻隔性能和柔韧性能的研究。
2.
The aggregation structure of γ-HDPE/PA-6 blends and the relationships between the blend structure and its barrier property have been studied by SEM, DSC and TGA.
用扫描电子显微镜 (SEM )、差式扫描量热法 (DSC)和热重法 (TGA)表征了经过γ 射线辐照的高密度聚乙烯 (γ HDPE)与尼龙 6 (PA 6 )共混物 (γ HDPE/PA 6 )的聚集态结构 ,研究了材料聚集态结构的改变与其阻隔性能间的关系。
3.
e effect of different layered silicate material, including raw montmorillonite, mica and organized montmorillonite on barrier property of HDPE/layered silicate composite was studied.
研究了不同层状硅酸盐包括普通蒙脱土、云母以及有机化蒙脱土对HDPE/层状硅酸盐复合材料的阻隔性能影响。
2)  barrier properties
阻隔性能
1.
For higher barrier properties and lower production cost,hexamethyldisiloxane(HMDSO) was used as the precursor,adding oxygen for oxidization by Panning Discharge Plasma Deposition(PDPs).
我国的阻隔包装薄膜采用多层共挤复合薄膜来达到对包装物基本的阻隔性能要求。
2.
For example, the barrier properties to are.
结果表明:合适的温度控制和较低的螺杆转速有利于分散相PA6层状结构的形成,研制出的层状共混吹塑瓶对烃类溶剂的阻隔性能较HDPE中空吹塑瓶有了较大幅度的提高,对芳烃类溶剂的阻隔性能提高达40 倍,而机械强度保持良好。
3.
The oxidation of high density polyethylene (HDPE) by γ ray irradiation in atmosphere of rich oxygen, miscibility of PA6 (polyamide 6) and γHDPE (HDPE irradiating in oxygen by γ ray irradiation) in the blend and the barrier properties of γHDPE/PA6 blend have been investigated.
研究了富氧气氛中高密度聚乙烯 (HDPE)的γ 射线辐照氧化及其与尼龙 6 (PA6 )的共混增容和共混材料的阻隔性能
3)  barrier performance
阻隔性能
1.
The material was also measured by methods of XRD and SEM,and its barrier performance and ab-.
结果表明在聚乙烯塑料包装薄膜上成功实现了二氧化钛镀膜;真空镀二氧化钛聚乙烯薄膜的气体阻隔性能大大提高,其气体透过量约为原聚乙烯薄膜的0。
4)  obstructing performance
阻隔性能
5)  high gas barrier property
高阻隔性能
6)  gas barrier property
气体阻隔性能
1.
This thesis contains two parts:The frist part is the preparation of high gas barrier property of rubber material.
本论文的主要工作和成果分为以下两个部分: 第一部分:高气体阻隔性能弹性体的制备: 虽然纳米复合材料是当今材料科学研究的热点领域之一,但有许多重要的应用性能和理论问题亟待解决。
2.
The impervious kaolin sheets prolonged the penetrating path of gas molecules in the rubber composites,which reduced the permeability about 40%~60% and improved the gas barrier property of the rubber composite effectively.
利用化学改性的高岭土(MK)和沉淀白碳黑(PS)作为增强剂,与丁苯橡胶(SBR)进行熔融共混和乳液共混制备橡胶复合材料,并对其力学性能、气体阻隔性能、热稳定性能以及微观结构进行分析测试,结果表明:改性高岭土在丁苯橡胶基体中达到了纳米水平的均匀分散,片层多呈平行定向排列,对橡胶大分子具有圈闭限制作用,明显改善了复合材料的力学性能和热稳定性能;另外,高岭石片层的不可穿透性,有效延长了气体分子在橡胶中的渗透路径,复合材料的透气率降低了40%~60%,气体阻隔性能得到了显著的提高;而且,片状结构的改性高岭土比球状结构的白碳黑更具有阻隔优势。
补充资料:阻隔
1.阻挡隔绝。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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